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Graphene oxide supported titanium dioxide & ferroferric oxide hybrid, a magnetically separable photocatalyst with enhanced photocatalytic activity for tetracycline hydrochloride degradation

机译:氧化石墨烯负载的二氧化钛与三氧化二铁混合体,一种可磁分离的光催化剂,具有增强的光催化活性,可降解四环素盐酸盐

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摘要

A facile, robust approach to the synthesis of Fe3O4/rGO/TiO2 nanocomposites is described. The synthesis involves two major steps: (1) preparation of Fe3O4/GO by an electrostatic self-assembly method; (2) deposition of TiO2 on the surface of the Fe3O4/rGO nanocomposite via a hydrothermal method. The as-prepared Fe3O4/rGO/TiO2 photocatalyst exhibited an enhanced photocatalytic activity for the degradation of tetracycline hydrochloride (TC-HCl) over a wide pH range from 3.0 to 11.0. At optimal conditions, a 92.6% degradation rate of TC-HCl was achieved within 330 min. The enhanced photocatalytic activity could be ascribed to the synergistic effect of the photo-Fenton reaction and electron transportation of graphene. A possible photocatalytic mechanism for TC-HCl by the Fe3O4/rGO/TiO2 nanocomposite and H2O2 was proposed based on the quenching tests and liquid chromatography-mass spectrometry (LC-MS) analysis. Furthermore, a leaching test was also carried out and the result suggested that the leached iron from the reaction system was negligible and the catalyst still exhibited excellent photocatalytic activity after five reaction cycles, which clearly demonstrated that the Fe3O4/rGO/TiO2 nanocomposite was reusable, excellently stable and highly effective.
机译:Fe 3 O 4 / rGO / TiO 2 纳米复合材料。合成过程涉及两个主要步骤:(1)通过静电自组装法制备Fe 3 O 4 / GO -组装方法; (2)TiO 2 在Fe 3 O 4表面上的沉积 / rGO纳米复合材料通过进行水热法。制备的Fe 3 O 4 / rGO / TiO 2 在从3.0到11.0的宽pH范围内,对四环素盐酸盐(TC-HCl)的降解显示出增强的光催化活性。在最佳条件下,330分钟内TC-HCl的降解率为92.6%。增强的光催化活性可以归因于光芬顿反应和石墨烯的电子传输的协同作用。 Fe 3 O 4 / rGO / TiO <的可能的TC-HCl光催化机理在此基础上,提出了sub> 2 纳米复合材料和H 2 O 2 的纳米复合材料。淬火测试和液相色谱-质谱(LC-MS)分析。此外,还进行了浸出试验,结果表明从反应体系中浸出的铁可以忽略不计,并且催化剂在五个反应循环后仍表现出优异的光催化活性,这清楚地表明Fe 3 < / sub> O 4 / rGO / TiO 2 纳米复合材料具有可重复使用性,极好的稳定性和高度的可塑性有效。

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